Intelligence Embedded.Robotics Reborn.Powering the Embodied AI Era with Agentic OS and Edge Compute.
We focus on the brain, not just the body. By merging autonomous driving engineering with frontier embodied foundation models, iMotionRobotics bridges the gap between cognitive perception and physical execution. We deliver scalable, decoupled, end-to-end solutions that turn intelligent reasoning into real-world action across any robotic form factor.
Agentic OS: The Task-Oriented Embodied Hub
VLA Policy: End-to-End Embodied Manipulation
Unified Vision-Language Transformer fusing egocentric vision, language, and proprioception for autoregressive robotic control.
- • Multimodal Backbone with built-in motion prior for perceptual consistency across vision, language, and state.
- • World Model predicts future scenes via flow matching; Action Head generates chunked trajectories for closed-loop control.
- • Spatial memory preserves long-horizon decision points; chunked decoding ensures smooth, coherent execution.
RUYi Dynamics VLA Policy
Vision-Language-Action Architecture for Embodied Manipulation
Edge AI Compute Platforms: The S100 & S600 Series
A formidable Agentic OS requires relentless hardware. Forged from autonomous driving DNA, our AI Boxes deliver scalable edge inference designed specifically for the physical world. From agile deployment to massive industrial throughput, we power the edge.
S100 Series (E/P): The Agile Pioneer
Engineered for cost-effective flexibility. Delivering up to 128 TOPS of native large-model compute and boasting 24GB of high-speed LPDDR5 memory, the S100 series effortlessly handles real-time, multimodal inference. Perfectly tailored for humanoid platforms, developer communities, and STEM education.
Ultra-Compact & Custom-Built
Featuring a highly compact metal chassis with a dual-fan thermal architecture, designed to seamlessly embed into third-party chassis. We offer deep hardware-level customization-from heterogeneous form factor adaptations and specialized industrial I/O expansions, to ruggedized protection for extreme environments. We build it to fit your exact product definition.
Tech Specs at a Glance (Spanning S100 & S600 Platforms)
Scalable Compute
Ranging from 80 TOPS, 128 TOPS, up to a staggering 560+ TOPS. Breaking the edge compute bottleneck.
Zero-Latency Control
Multi-core CPUs deliver ultra-low instruction scheduling latency, ensuring Model Predictive Control (MPC) loops operate at <20ms.
Industrial-Grade Perception
Native GMSL support for auto-grade HD video streams. Up to 8x USB-C ports, fully compatible with industrial depth cameras and LiDAR.
Hardcore Connectivity
Multiple GbE ports and built-in CAN buses directly interface with third-party chassis, actuators, and servos. Features high-speed Wi-Fi for complex factory deployments, and high-speed UFS/SSD storage for high-frequency multimodal telemetry logging.
Unbound Flexibility: Empowering Real-World Deployment
We build the "Brain." Through our "Proprietary OS + AI Box + Partner Robot" ecosystem, we drive deployment across industrial operations, developer-first integration, and education.
Industrial Manufacturing
The primary proving ground for our VLA models, delivering real-time edge inference for closed-loop execution on the factory floor.
The Developer Ecosystem (Total Hardware Decoupling)
Modular Compute Nodes: Our AI Boxes are designed for extreme flexibility-embed them deeply into a robot's chassis as a central hub, or use them as external, plug-and-play edge nodes. Model-Hardware Decoupling: No hardware lock-in. Our Agentic OS allows the VLA and VLN models to be deployed independently onto your existing third-party compute platforms and robotic hardware.
K12 Embodied AI Education
We provide a turnkey "AI Box + Robot Platform + Curriculum" stack to train the next generation of AI engineers.
Navigation Capability
Expansive VLN Navigation Ecosystem
Proven cross-morphology generalization. Our architecture is deployed in community ecosystems and has achieved real-world closed-loop validation on mainstream platforms, including Unitree G1 and Booster Robotics K1, in complex instruction-following and obstacle-avoidance tasks.
